Network system and node apparatus
    1.
    发明授权
    Network system and node apparatus 失效
    网络系统和节点设备

    公开(公告)号:US08027246B2

    公开(公告)日:2011-09-27

    申请号:US12071266

    申请日:2008-02-19

    IPC分类号: H04J3/14

    摘要: A failure detection protocol is applied so that failure detection requests for the same aggregated link can be processed even when the failure detection requests differ among routing protocols. The failure detection protocol is executed for each of the physical links that form an aggregated link, and a notification is sent to a higher-level application (for example, a routing protocol), which is a requesting source of a communication line failure monitoring request, with a discrimination between a case in which the communication of the aggregated link in its entirety fails and a case in which some physical links of the aggregated link fail.

    摘要翻译: 应用故障检测协议,即使当路由协议中的故障检测请求不同时,也可以处理相同聚合链路的故障检测请求。 为形成聚合链路的每个物理链路执行故障检测协议,并将通知发送到作为通信线路故障监视请求的请求源的更高级应用(例如,路由协议) 在整体聚合链路的通信失败的情况与聚合链路的一些物理链路失败的情况之间的区分。

    Network system and node apparatus
    2.
    发明申请
    Network system and node apparatus 失效
    网络系统和节点设备

    公开(公告)号:US20080253295A1

    公开(公告)日:2008-10-16

    申请号:US12071266

    申请日:2008-02-19

    IPC分类号: G01R31/08

    摘要: A failure detection protocol is applied so that failure detection requests for the same aggregated link can be processed even when the failure detection requests differ among routing protocols. The failure detection protocol is executed for each of the physical links that form an aggregated link, and a notification is sent to a higher-level application (for example, a routing protocol), which is a requesting source of a communication line failure monitoring request, with a discrimination between a case in which the communication of the aggregated link in its entirety fails and a case in which some physical links of the aggregated link fail.

    摘要翻译: 应用故障检测协议,即使当路由协议中的故障检测请求不同时,也可以处理相同聚合链路的故障检测请求。 为形成聚合链路的每个物理链路执行故障检测协议,并将通知发送到作为通信线路故障监视请求的请求源的更高级应用(例如,路由协议) 在整体聚合链路的通信失败的情况与聚合链路的一些物理链路失败的情况之间的区分。

    GATEWAY APPARATUS
    3.
    发明申请
    GATEWAY APPARATUS 审中-公开
    网关设备

    公开(公告)号:US20090049180A1

    公开(公告)日:2009-02-19

    申请号:US12184352

    申请日:2008-08-01

    IPC分类号: G06F15/16

    CPC分类号: H04L67/14 H04L67/02 H04L67/28

    摘要: Even when all of usable sessions are in use, a communication can be established for a new session and the interrupted session is automatically restored. Information on degrees of importance of communication sessions and information of restoration requirement are set in advance and stored in a session importance table in association with identifier (URI) of communication initiating terminals and identifier of destinations of communication. When a connection request for a session having a high degree of importance such as an emergency session is received, the session having the lowest degree of importance is selected and interrupted. Information of the interrupted session such as the communication initiator identifier and the communication destination identifier is stored in a session restoration table. The session is automatically restored as soon as a session resource becomes unoccupied according to the communication initiator identifier and the communication destination identifier stored in the session restoration table.

    摘要翻译: 即使所有可用会话都在使用中,可以为新会话建立通信,并且中断的会话被自动恢复。 与通信发起终端的标识符(URI)和通信目的地的标识符相关联地,预先设置关于通信会话的重要性和恢复要求的信息的信息,并存储在会话重要性表中。 当接收到诸如紧急会话之类的具有高度重要性的会话的连接请求时,选择和中断具有最低重要度的会话。 诸如通信发起者标识符和通信目的地标识符的中断会话的信息被存储在会话恢复表中。 一旦会话资源根据通信发起者标识符和存储在会话恢复表中的通信目的地标识符未被占用,会话被自动恢复。

    NETWORK SYSTEM, NODE DEVICE AND MANAGEMENT SERVER
    4.
    发明申请
    NETWORK SYSTEM, NODE DEVICE AND MANAGEMENT SERVER 失效
    网络系统,节点设备和管理服务器

    公开(公告)号:US20080225731A1

    公开(公告)日:2008-09-18

    申请号:US11964210

    申请日:2007-12-26

    IPC分类号: G06F11/00

    摘要: Erroneous detection of a failure in spite of the absence of failure on the route on account of a communication delay is to be prevented. A node device detects a failure on the route to a remote node device is detected by a failure to receive a packet from the remote node device after the elapse of a determined detection time. The node device sets “remote system transmission interval x detection multiplier” to be a first detecting time on the basis of a packet transmission interval determined by negotiation with the remote node device. It also sets the sum of “remote system actual transmission interval x detection multiplier” and “tolerable delay time” to be a second detecting time. The first detecting time and the second detecting time are compared, and what is longer is determined as the detecting time to be applied to actual operation.

    摘要翻译: 考虑到由于通信延迟而导致路由不存在故障,故障的错误检测是可以防止的。 在经过确定的检测时间之后,通过从远程节点设备接收到分组的故障来检测节点设备检测到到远程节点设备的路由的故障。 基于通过与远程节点设备协商确定的分组传输间隔,节点设备将“远程系统传输间隔x检测乘数”设置为第一检测时间。 它还将“远程系统实际传输间隔x检测乘数”和“容忍延迟时间”的和设置为第二检测时间。 比较第一检测时间和第二检测时间,将更长的时间确定为要应用于实际操作的检测时间。

    Network system, node device and management server
    5.
    发明授权
    Network system, node device and management server 失效
    网络系统,节点设备和管理服务器

    公开(公告)号:US07801051B2

    公开(公告)日:2010-09-21

    申请号:US11964210

    申请日:2007-12-26

    IPC分类号: H04J3/14 G06F11/00

    摘要: Erroneous detection of a failure in spite of the absence of failure on the route on account of a communication delay is to be prevented. A node device detects a failure on the route to a remote node device is detected by a failure to receive a packet from the remote node device after the elapse of a determined detection time. The node device sets “remote system transmission interval×detection multiplier” to be a first detecting time on the basis of a packet transmission interval determined by negotiation with the remote node device. It also sets the sum of “remote system actual transmission interval ×detection multiplier” and “tolerable delay time” to be a second detecting time. The first detecting time and the second detecting time are compared, and what is longer is determined as the detecting time to be applied to actual operation.

    摘要翻译: 考虑到由于通信延迟而导致路由不存在故障,故障的错误检测是可以防止的。 在经过确定的检测时间之后,通过从远程节点设备接收到分组的故障来检测节点设备检测到到远程节点设备的路由的故障。 节点设备基于通过与远程节点设备协商确定的分组传输间隔将“远程系统传输间隔×检测乘数”设置为第一检测时间。 它还将“远程系统实际发送间隔×检测乘数”和“可容忍延迟时间”的和设置为第二检测时间。 比较第一检测时间和第二检测时间,将更长的时间确定为要应用于实际操作的检测时间。

    METHOD FOR MODIFYING CHROMOSOMES
    9.
    发明申请
    METHOD FOR MODIFYING CHROMOSOMES 有权
    修饰色素的方法

    公开(公告)号:US20090007282A1

    公开(公告)日:2009-01-01

    申请号:US12116294

    申请日:2008-05-07

    IPC分类号: A01K67/027

    摘要: The present invention relates to a method for producing a modified foreign chromosome(s) or a fragment(s) thereof, which comprises the steps of: (a) preparing a microcell comprising a foreign chromosome(s) or a fragment(s) thereof, and transferring said foreign chromosome(s) or a fragment(s) into a cell with high homologous recombination efficiency through its fusion with said microcell; (b) in said cell with high homologous recombination efficiency, inserting a targeting vector by homologous recombination into a desired site of said foreign chromosome(s) or a fragment(s) thereof, and/or a desired site of a chromosome(s) derived from said cell with high homologous recombination efficiency, thereby marking said desired site; and (c) in said cell with high homologous recombination efficiency, causing deletion and/or translocation to occur at the marked site of said foreign chromosome(s) or a fragment(s) thereof.

    摘要翻译: 本发明涉及一种生产修饰的外源染色体或其片段的方法,其包括以下步骤:(a)制备包含外来染色体或其片段的微细胞 并通过与所述微细胞融合将所述外源染色体或片段转移到具有高同源重组效率的细胞中; (b)在具有高同源重组效率的所述细胞中,通过同源重组将靶向载体插入所述外源染色体或其片段的所需位点和/或染色体的所需位点, 衍生自具有高同源重组效率的所述细胞,从而标记所述期望的位点; 和(c)在具有高同源重组效率的所述细胞中,导致在所述外源染色体或其片段的标记位点发生缺失和/或易位。